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热休克蛋白、耐热性与蛋白质合成之间的关系。

The relationship of heat-shock proteins, thermotolerance, and protein synthesis.

作者信息

Laszlo A

机构信息

Department of Radiology, Washington University Medical Center, St. Louis, Missouri 63108.

出版信息

Exp Cell Res. 1988 Oct;178(2):401-14. doi: 10.1016/0014-4827(88)90409-0.

Abstract

The relationship of heat-induced inhibition of protein synthesis (HIIPS) and thermotolerance, the transient ability to survive otherwise lethal heat treatments, was studied in HA-1 Chinese hamster fibroblasts exposed to various treatments. A mild heatshock or exposure to sodium arsenite induced a refractoriness to HIIPS, while exposure to the amino acid analog of proline, azetidine, did not. The development and decay of refractoriness to HIIPS after exposure to heat or sodium arsenite paralleled in the increase and decrease of the rate of synthesis of the heat-shock proteins (HSP), and was associated with neither the persistence of elevated levels of HSP nor the persistence of the thermotolerant state. Refractoriness to HIIPS was not associated with the elevated synthesis of HSP in the presence of amino acid analogs regardless of the mode of induction, indicating a requirement for functional HSP for the effect. The refractoriness to HIIPS was also found in heat-resistant variants of HA-1 cells that express elevated levels of hsp 70, implicating a role for this protein in this process. Our observation establish an unique biological effect associated with the period of elevated synthesis of the HSP, especially the hsp 70.

摘要

研究了热诱导的蛋白质合成抑制(HIIPS)与耐热性(即在原本致死的热处理中存活的短暂能力)之间的关系,该研究以HA - 1中国仓鼠成纤维细胞为对象,对其进行了各种处理。轻度热休克或暴露于亚砷酸钠会诱导细胞对HIIPS产生耐受性,而暴露于脯氨酸的氨基酸类似物氮杂环丁烷则不会。暴露于热或亚砷酸钠后,对HIIPS耐受性的产生和消退与热休克蛋白(HSP)合成速率的增加和降低平行,并且与HSP水平的持续升高或耐热状态的持续存在均无关。无论诱导方式如何,在存在氨基酸类似物的情况下,对HIIPS的耐受性均与HSP的合成升高无关,这表明该效应需要功能性HSP。在表达高水平hsp 70的HA - 1细胞耐热变体中也发现了对HIIPS的耐受性,这表明该蛋白在此过程中发挥了作用。我们的观察结果确立了一种与HSP,尤其是hsp 70合成升高时期相关的独特生物学效应。

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